The origin of the body plan, major traits, and modes of development of chordates will be sought in the next grant period by our making a molecular developmental analysis of hemichordates, the phylum of bilateral animals that last shared an ancestor with chordates. Traits possessed by modern members of both phyla were probably possessed by the common ancestor and just brought forward in the chordate lineage, not evolved anew by chordates. Hemichordates have long beer thought to possess chordate-like features, but anatomical comparisons of the 2 groups, while suggestive, have not allowed definitive conclusions. We have found that hemichordates are remarkably Iike chordates in the anteroposterior dimension in terms of their map of 28 domains of ectodermal expression of orthologs of transcription factors which are important for neural patterning in chordates. Furthermore, hemichordates possess 4 signaling centers (secreted Wnts, Fgfs, Hh) along this dimension, similar to those in chordates, such as the anterior neural ridge and the isthmic organizer. The anteroposterior similarities prevail despite the fact that the hemichordate nervous system is diffuse throughout the ectoderm, not centralized as in chordates. In the dorsoventral dimension hemichordates possess 2 opposed signaling centers, 1 for Bmps and 1 for Chordin, as do chordates, but the orientation is more like that of protostomes such as Drosophila (Bmp dorsal; Chordin ventral). We propose to analyze hemichordate development further to determine the formation and function of the 4 anteroposterior signaling centers and 2 dorsoventral signaling centers in patterning the hemichordate embryo and to compare our findings with those on chordates to further elucidate ancestral developmental modes. Furthermore, the development of isolated ectoderm will be studied to see if it has a neural default circuitry or whether it is autonomously specified for neurogenesis, independent of Bmp. Then, the mesendoderm will be examined for the expression of orthologs of genes expressed in Spemann's organizer, which is a major developmental trait of chordates. siRNA interventions will be used to evaluate the role of the encoded gene products in development.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
5R01HD042724-06
Application #
7245122
Study Section
Development - 1 Study Section (DEV)
Program Officer
Javois, Lorette Claire
Project Start
2002-07-01
Project End
2010-06-30
Budget Start
2007-07-01
Budget End
2008-06-30
Support Year
6
Fiscal Year
2007
Total Cost
$211,862
Indirect Cost
Name
University of California Berkeley
Department
Biochemistry
Type
Schools of Arts and Sciences
DUNS #
124726725
City
Berkeley
State
CA
Country
United States
Zip Code
94704
Simakov, Oleg; Kawashima, Takeshi; Marlétaz, Ferdinand et al. (2015) Hemichordate genomes and deuterostome origins. Nature 527:459-65
Freeman, Robert; Ikuta, Tetsuro; Wu, Michael et al. (2012) Identical genomic organization of two hemichordate hox clusters. Curr Biol 22:2053-8
Darras, Sebastien; Gerhart, John; Terasaki, Mark et al. (2011) *-catenin specifies the endomesoderm and defines the posterior organizer of the hemichordate Saccoglossus kowalevskii. Development 138:959-70
Lemons, Derek; Fritzenwanker, Jens H; Gerhart, John et al. (2010) Co-option of an anteroposterior head axis patterning system for proximodistal patterning of appendages in early bilaterian evolution. Dev Biol 344:358-62
Freeman Jr, R M; Wu, M; Cordonnier-Pratt, M-M et al. (2008) cDNA sequences for transcription factors and signaling proteins of the hemichordate Saccoglossus kowalevskii: efficacy of the expressed sequence tag (EST) approach for evolutionary and developmental studies of a new organism. Biol Bull 214:284-302
Gerhart, John (2006) The deuterostome ancestor. J Cell Physiol 209:677-85
Lowe, Christopher J; Terasaki, Mark; Wu, Michael et al. (2006) Dorsoventral patterning in hemichordates: insights into early chordate evolution. PLoS Biol 4:e291
Gerhart, John; Lowe, Christopher; Kirschner, Marc (2005) Hemichordates and the origin of chordates. Curr Opin Genet Dev 15:461-7
Lowe, Christopher J; Wu, Mike; Salic, Adrian et al. (2003) Anteroposterior patterning in hemichordates and the origins of the chordate nervous system. Cell 113:853-65